Couplings between a single massless tensor field with the mixed symmetry (3,1) and one vector field

Constantin Bizdadea, Costin Cătălin Ciobîrcă, Iulian Negru, and Solange-Odile Saliu
Phys. Rev. D 74, 045031 – Published 29 August 2006

Abstract

Under the hypotheses of smoothness in the coupling constant, locality, Lorentz covariance, and Poincaré invariance of the deformations, combined with the preservation of the number of derivatives on each field, the consistent interactions between a single free massless tensor gauge field with the mixed symmetry of a two-column Young diagram of the type (3,1) and one Abelian vector field have been investigated. The computations are done with the help of the deformation theory based on a cohomological approach, in the context of the antifield-BRST formalism. The main result is that there exist nontrivial cross-couplings between these types of fields in five spatiotemporal dimensions, which break the PT invariance and allow for the deformation of the gauge transformations of the vector field, but not of the gauge algebra.

  • Received 3 April 2006

DOI:https://doi.org/10.1103/PhysRevD.74.045031

©2006 American Physical Society

Authors & Affiliations

Constantin Bizdadea*, Costin Cătălin Ciobîrcă, Iulian Negru, and Solange-Odile Saliu§

  • Faculty of Physics, University of Craiova, 13 Al. I. Cuza Str., Craiova 200585, Romania

  • *Electronic address: bizdadea@central.ucv.ro
  • Electronic address: ciobarca@central.ucv.ro
  • Electronic address: inegru@central.ucv.ro
  • §Electronic address: osaliu@central.ucv.ro

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Issue

Vol. 74, Iss. 4 — 15 August 2006

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